Yuan Dingzhong, Zhang Shiao, Xiang Zhihao, He Yan, Wang Yun, Liu Yan, Zhao Xiaohong, Zhou Xinyue, Zhang Qinghua
College of Chemistry , Nanchang University , Nanchang 330031 , P. R. China.
ACS Appl Mater Interfaces. 2019 Jul 10;11(27):24512-24522. doi: 10.1021/acsami.9b03674. Epub 2019 Jun 27.
It is an important task to develop the technologies for the extraction of thorium from strong HNO media with high efficiency. In this work, solvothermal polymerization of trimethylolpropane trimethacrylate (TRIM) and vinylphosphonic acid (VPA) has been used to synthesize a novel polymer material P (TRIM-VPA) bearing a phosphonic acid ligand for thorium entrapment in strong HNO media. Under the current experiment condition, the polymer adsorbents showed a record-breaking maximum adsorption capacity for thorium (403.2 mg g) with an excellent selectivity for thorium over Gd(III), Nd(III), Ce(III), Sr(III), Sm(III), and La(III) in 4 mol L HNO media at 298 K. The content of P═O ligands existing on P (TRIM-VPA) has an obvious influence on the adsorption capacities for thorium. Increasing the content of P═O ligands would result in higher adsorption capacity of thorium. The isothermal data fitted well the Langmuir model, and the sorption kinetics fitted the pseudo-second-order model. The adsorption behavior was not only spontaneous but also endothermic in reality. Both XPS and FTIR studies revealed that the adsorption interaction for thorium extraction was acquired only via the coordination of P═O groups anchored on P (TRIM-VPA) with thorium. Moreover, P (TRIM-VPA) still had high adsorption capacity after five sorption-desorption cycles in 4 M HNO media. DFT calculation suggested that a 1:2 ratio of Th(IV) with the P═O group on the same graft chain validated the experimental findings. Thus, the solvothermal polymerization method might be a promising way for the synthesis of the adsorbents for the highly efficient extraction of thorium from strong HNO media.
开发从强硝酸介质中高效提取钍的技术是一项重要任务。在本工作中,三羟甲基丙烷三甲基丙烯酸酯(TRIM)和乙烯基膦酸(VPA)的溶剂热聚合被用于合成一种新型聚合物材料P(TRIM-VPA),其带有膦酸配体用于在强硝酸介质中捕获钍。在当前实验条件下,该聚合物吸附剂对钍表现出破纪录的最大吸附容量(403.2 mg/g),在298 K的4 mol/L硝酸介质中对钍的选择性优于钆(III)、钕(III)、铈(III)、锶(III)、钐(III)和镧(III)。P(TRIM-VPA)上存在的P═O配体含量对钍的吸附容量有明显影响。增加P═O配体的含量会导致钍的吸附容量更高。等温数据很好地拟合了朗缪尔模型,吸附动力学拟合了准二级模型。实际上,吸附行为不仅是自发的,而且是吸热的。XPS和FTIR研究均表明,钍萃取的吸附相互作用仅通过P(TRIM-VPA)上锚定的P═O基团与钍的配位获得。此外,P(TRIM-VPA)在4 M硝酸介质中经过五次吸附-解吸循环后仍具有高吸附容量。DFT计算表明,Th(IV)与同一接枝链上的P═O基团的1:2比例验证了实验结果。因此,溶剂热聚合法可能是合成用于从强硝酸介质中高效提取钍的吸附剂的一种有前途的方法。